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首页> 外文期刊>International journal of oncology >Suppression of autophagic genes sensitizes CUG2-overexpressing A549 human lung cancer cells to oncolytic vesicular stomatitis virus-induced apoptosis
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Suppression of autophagic genes sensitizes CUG2-overexpressing A549 human lung cancer cells to oncolytic vesicular stomatitis virus-induced apoptosis

机译:自噬基因的抑制使过表达CUG2的A549人肺癌细胞对溶瘤性水疱性口炎病毒诱导的细胞凋亡敏感

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We showed in our previous study that cancer upregulated gene (CUG) 2, a novel oncogene, confers resistance to infection of oncolytic vesicular stomatitis virus (VSV) by activating Stat1-mediated signal transduction. Since many studies have reported that autophagy is involved in virus replication, we investigated whether autophagy also plays a role in the antiviral activity in A549 cells overexpressing CUG2 (A549-CUG2). We suppressed Atg5 or Beclin?1 expression using siRNA and examined its effect on the susceptibility of cells to infection by oncolytic VSV. We found that A549-CUG2 cells treated with Atg5 or Beclin?1 siRNA became susceptible to VSV infection, whereas A549-CUG2 cells treated with control siRNA were resistant. This result suggests that autophagy is involved in the antiviral response of A549-CUG2 cells. Further investigation revealed that autophagy impairment enhanced the generation of reactive oxygen species (ROS), which resulted in inactivation of S6 kinase. Under these conditions, the levels of ISG15 transcript and protein decreased, which conferred on A549-CUG2 cell susceptibility to VSV infection. Finally, we found that overloading of H2O2 sensitized control A549-CUG2 cells to VSV-induced apoptosis. Taken together, these results indicate that autophagy impairment induces excessive ROS formation, which decreases S6 kinase activity and ISG15 expression, ultimately rendering the A549-CUG2 cells susceptible to VSV infection. We propose that autophagy impairment is a potential strategy for successful VSV virotherapy of CUG2-overexpressing tumors.
机译:我们在先前的研究中表明,癌症上调基因(CUG)2(一种新的致癌基因)通过激活Stat1介导的信号转导,赋予对溶瘤性水疱性口炎病毒(VSV)感染的抵抗力。由于许多研究报道自噬与病毒复制有关,因此我们研究了自噬是否也在过表达CUG2(A549-CUG2)的A549细胞的抗病毒活性中起作用。我们使用siRNA抑制了Atg5或Beclin?1的表达,并研究了其对溶瘤性VSV感染细胞的敏感性的影响。我们发现,用Atg5或Beclin?1 siRNA处理的A549-CUG2细胞变得易受VSV感染,而用对照siRNA处理的A549-CUG2细胞具有耐药性。该结果表明自噬参与了A549-CUG2细胞的抗病毒应答。进一步的研究表明,自噬损伤增强了活性氧(ROS)的生成,从而导致S6激酶失活。在这些条件下,ISG15转录物和蛋白质的水平降低,这导致A549-CUG2细胞易受VSV感染。最后,我们发现H2O2超载使对照A549-CUG2细胞对VSV诱导的细胞凋亡敏感。综上所述,这些结果表明自噬损伤诱导过量的ROS形成,从而降低S6激酶活性和ISG15表达,最终使A549-CUG2细胞易受VSV感染。我们建议自噬损伤是成功的过表达CUG2的肿瘤VSV病毒疗法的潜在策略。

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